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首页> 外文期刊>AIChE Journal >Fines Removal in a Continuous Plug Flow Crystallizer by Optimal Spatial Temperature Profiles with Controlled Dissolution
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Fines Removal in a Continuous Plug Flow Crystallizer by Optimal Spatial Temperature Profiles with Controlled Dissolution

机译:通过控制溶解度的最佳空间温度曲线在连续塞流结晶器中去除细粉

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摘要

This work presents a systematic study for obtaining the optimal temperature profile in a continuous plug flow crystallizer (PFC). The proposed PFC consists of multiple segments where the temperature of each segment can be controlled individually. An optimization problem is formulated for a target crystal size distribution (without fines) with the temperature of the segments as decision variables. The results indicate that for the crystallization kinetics considered, dissolution steps are necessary for the reduction of fines due to nucleation. A systematic study on the form of growth and dissolution kinetics suggested that the key factor that determines whether the dissolution steps will be successful in reducing fines, without compromising the final size of the crystals from seed, is the size dependence of the growth and dissolution kinetics. Best fines removal is achieved when the larger crystals grow faster than the smaller ones and the smaller crystals dissolve faster than the larger ones.
机译:这项工作为获得连续活塞流结晶器(PFC)中的最佳温度曲线提供了系统的研究。建议的PFC由多个部分组成,其中每个部分的温度都可以单独控制。针对目标晶体尺寸分布(无细粉),以段的温度作为决策变量,提出了一个优化问题。结果表明,对于所考虑的结晶动力学,溶解步骤对于减少由于成核而产生的细粉是必需的。对生长和溶解动力学形式的系统研究表明,决定溶解步骤是否能成功减少细粉而不损害种子晶体最终尺寸的关键因素是生长和溶解动力学的尺寸依赖性。 。当较大的晶体比较小的晶体生长快并且较小的晶体比较大的晶体溶解快时,可以达到最佳的细屑清除效果。

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